High Efficiency Solar Cells: A Model in Silvaco
Approved for public release; distribution is unlimited === This thesis develops a model in Silvaco International's Virtual Wafer Fabrication (VWF) environment to assist advanced solar cell developers in designing more efficient solar cells intended for use in space. The complete model is intend...
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Monterey, California. Naval Postgraduate School
2012
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ndltd-nps.edu-oai-calhoun.nps.edu-10945-84672015-07-03T16:06:08Z High Efficiency Solar Cells: A Model in Silvaco McCloy, Darin J. Michael, Sherif Pieper, Ron Approved for public release; distribution is unlimited This thesis develops a model in Silvaco International's Virtual Wafer Fabrication (VWF) environment to assist advanced solar cell developers in designing more efficient solar cells intended for use in space. The complete model is intended to accurately predict the properties and characteristics of an existing state-of-the art multiple junction solar cell. This model should also be robust yet flexible in order to facilitate future modification and expansion. A specific dual junction cell, constructed of GaInP2/GaAs/Ge and displaying 24- 26% efficiency at Air Mass Zero sun equivalency, was chosen as the baseline for this model and the characteristics of this cell and the materials that comprise it are explored and discussed. Basic building block models are constructed and displayed. Additionally, the intended structure of the eventual model is displayed and possibilities for future work are described 2012-08-09T19:21:01Z 2012-08-09T19:21:01Z 1999-03 Thesis http://hdl.handle.net/10945/8467 en_US Monterey, California. Naval Postgraduate School |
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en_US |
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description |
Approved for public release; distribution is unlimited === This thesis develops a model in Silvaco International's Virtual Wafer Fabrication (VWF) environment to assist advanced solar cell developers in designing more efficient solar cells intended for use in space. The complete model is intended to accurately predict the properties and characteristics of an existing state-of-the art multiple junction solar cell. This model should also be robust yet flexible in order to facilitate future modification and expansion. A specific dual junction cell, constructed of GaInP2/GaAs/Ge and displaying 24- 26% efficiency at Air Mass Zero sun equivalency, was chosen as the baseline for this model and the characteristics of this cell and the materials that comprise it are explored and discussed. Basic building block models are constructed and displayed. Additionally, the intended structure of the eventual model is displayed and possibilities for future work are described |
author2 |
Michael, Sherif |
author_facet |
Michael, Sherif McCloy, Darin J. |
author |
McCloy, Darin J. |
spellingShingle |
McCloy, Darin J. High Efficiency Solar Cells: A Model in Silvaco |
author_sort |
McCloy, Darin J. |
title |
High Efficiency Solar Cells: A Model in Silvaco |
title_short |
High Efficiency Solar Cells: A Model in Silvaco |
title_full |
High Efficiency Solar Cells: A Model in Silvaco |
title_fullStr |
High Efficiency Solar Cells: A Model in Silvaco |
title_full_unstemmed |
High Efficiency Solar Cells: A Model in Silvaco |
title_sort |
high efficiency solar cells: a model in silvaco |
publisher |
Monterey, California. Naval Postgraduate School |
publishDate |
2012 |
url |
http://hdl.handle.net/10945/8467 |
work_keys_str_mv |
AT mccloydarinj highefficiencysolarcellsamodelinsilvaco |
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1716807738378420224 |